Genome Editing for Speed Breeding of Horticultural Crops

B. Balaji, E. Dharani, S. Shricharan, S. Shakespear, Akshay K. Singh, M. A. Pillai, J. K. Y. Saini
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引用次数: 1

Abstract

Climate change is one of the burdensome factors of agricultural productivity. Adverse biotic and abiotic stress impacts directly on plants resulting in poor productivity and yield loss. Modern protocols in genome editing using CRISPR, TALENs, ZFNs and Meganucleases enable editing at the precise site. The versatility of genome editing tools makes its application useful in fields like crop improvement, gene functional analyses, pathway research, studying animal models, genetic analyses, epigenetic research, drug development and biofuels research etc. The technological advancements in genome editing are adopted in both monocots and dicots for crop improvement. These technologies are precise, independent of breeding limitations like unexplored germplasm resources and reduce breeding cycles drastically from decades to years to meet the global requirements. The application of genome editing in agriculture proves to be a potential source for developing crops with biotic and abiotic stress, improved yield with better nutritional qualities.
用于园艺作物快速育种的基因组编辑
气候变化是影响农业生产力的重要因素之一。不利的生物和非生物胁迫直接影响植物,导致生产力低下和产量损失。使用CRISPR、TALENs、zfn和meganuc酶的基因组编辑的现代协议能够在精确的位点进行编辑。基因组编辑工具的多功能性使其在作物改良、基因功能分析、途径研究、动物模型研究、遗传分析、表观遗传研究、药物开发和生物燃料研究等领域的应用非常有用。基因组编辑技术的进步被用于单子叶和双子叶作物改良。这些技术是精确的,不受育种限制,如未开发的种质资源,并大大缩短育种周期,从几十年到几年,以满足全球需求。基因组编辑在农业中的应用被证明是开发生物和非生物胁迫作物、提高产量和改善营养品质的潜在来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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